3D Reconfigurable Intelligent Surfaces for Satellite-Terrestrial Networks

Fuente: arXiv
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Autores principales: Tanash, Islam M., Wichman, Risto
Formato: Preprint
Publicado: 2024
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author Tanash, Islam M.
Wichman, Risto
author_facet Tanash, Islam M.
Wichman, Risto
contents This paper proposes a three-dimensional (3D) satellite-terrestrial communication network assisted with reconfigurable intelligent surfaces (RISs). Using stochastic geometry models, we present an original framework to derive tractable yet accurate closed-form expressions for coverage probability and ergodic capacity in the presence of fading. A homogeneous Poisson point process models the satellites on a sphere, while RISs are randomly deployed in a 3D cylindrical region. We consider nonidentical channels that correspond to different RISs and follow the κ-μ fading distribution. We verify the high accuracy of the adopted approach through Monte Carlo simulations and demonstrate the significant improvement in system performance due to using RISs. Furthermore, we comprehensively study the effect of the different system parameters on its performance using the derived analytical expressions, which enable system engineers to predict and optimize the expected downlink coverage and capacity performance analytically.
format Preprint
id arxiv_https___arxiv_org_abs_2405_11909
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle 3D Reconfigurable Intelligent Surfaces for Satellite-Terrestrial Networks
Tanash, Islam M.
Wichman, Risto
Signal Processing
This paper proposes a three-dimensional (3D) satellite-terrestrial communication network assisted with reconfigurable intelligent surfaces (RISs). Using stochastic geometry models, we present an original framework to derive tractable yet accurate closed-form expressions for coverage probability and ergodic capacity in the presence of fading. A homogeneous Poisson point process models the satellites on a sphere, while RISs are randomly deployed in a 3D cylindrical region. We consider nonidentical channels that correspond to different RISs and follow the κ-μ fading distribution. We verify the high accuracy of the adopted approach through Monte Carlo simulations and demonstrate the significant improvement in system performance due to using RISs. Furthermore, we comprehensively study the effect of the different system parameters on its performance using the derived analytical expressions, which enable system engineers to predict and optimize the expected downlink coverage and capacity performance analytically.
title 3D Reconfigurable Intelligent Surfaces for Satellite-Terrestrial Networks
topic Signal Processing
url https://arxiv.org/abs/2405.11909